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Intra-particle Mass Transfer and Contact Time Effects in Fluidized Catalytic Cracking

机译:流化催化裂化中的颗粒内传质和接触时间效应

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Certain yield changes in FCC due to changes in catalyst contact time, reactor configuration, and/or catalyst properties are consistent with the hypothesis that mass transfer in the pores external to the zeolite is additionally limiting the catalysis. We attempted to validate this hypothesis by evaluating catalyst effectiveness factors and their parametric sensitivity to catalyst contact time. The rate constants required to obtain a given conversion vary as the reciprocal of catalyst contact-time, so that the potential importance of mass transfer increases for processes with shorter contact times. We found that vapor-phase gas-oil cracking is diffusion-limited at the risei entrance for contact times and conversions typical of many operations, a result consistent with commercial observations.
机译:由于催化剂接触时间,反应器构型和/或催化剂性能的变化,FCC的某些产量变化与沸石外部外部孔中的孔中的质量转移另外限制催化的假设是一致的。我们试图通过评估催化剂效果因子及其参数敏感性对催化剂接触时间来验证该假设。获得给定转换所需的速率常数随着催化剂接触时间的倒数而变化,从而随着接触时间的较短的过程增加了传质的可能性。我们发现气相气体 - 油裂解在康西群中的扩散限制,用于许多操作的接触时间和转化率的升级入口,结果与商业观察结果一致。

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